IP Library › Granted Patent US 12,118,690
Granted Patent B2
US 12,118,690 · App. 17/609,636 · Granted Oct 15, 2024

Image display method and device, and computer storage medium

Inventors: Wenyu Li (Beijing, CN); Jinghua Miao (Beijing, CN); Hao Zhang (Beijing, CN); Lili Chen (Beijing, CN)
Assignees: Beijing BOE Optoelectronics Technology Co., Ltd.; BOE Technology Group Co., Ltd.
G06T3/40G06F3/012G06F3/1407G06T5/50G06T2207/20021G06T2207/20221
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Quick Facts
Patent No.
US 12,118,690
App. No.
17/609,636
Granted
Oct 15, 2024
Kind
B2
Abstract

Provided is an image display method, including: transmitting a first image of a first resolution to a display component at a first frequency in the case that the mode information indicates a first mode, wherein the first image is formed by splicing a plurality of sub-images of a second resolution; and transmitting a second image of the first resolution to the display component at a third frequency in the case that the mode information indicates a second mode, wherein n second images form a frame of image of the display component.

Claims (60)

1. An image display method, applicable to a processing component, the method comprising:

acquiring mode information;

transmitting a first image of a first resolution to a display component at a first frequency in the case that the mode information indicates a first mode, wherein the first image is formed by splicing a plurality of sub-images of a second resolution; and

transmitting a second image of the first resolution to the display component at a third frequency in the case that the mode information indicates a second mode, wherein n second images form a frame of image of the display component, and n≥2.

2. The method according to claim 1 , wherein transmitting the first image of the first resolution to the display component at the first frequency in the case that the mode information indicates the first mode comprises:

acquiring the plurality of sub-images of the second resolution in the case that the mode information indicates the first mode; and

splicing the plurality of sub-images into the first image of the first resolution.

3. The method according to claim 1 , wherein transmitting the second image of the first resolution to the display component at the third frequency in the case that the mode information indicates the second mode comprises:

acquiring a third image of a third resolution in the case that the mode information indicates the second mode;

cropping the third image into the n second images of the first resolution; and

transmitting the second image of the first resolution to the display component at the third frequency.

4. The method according to claim 1 , wherein transmitting the first image of the first resolution to the display component at the first frequency comprises:

generating the first image of the first resolution with a first mode identifier; and

transmitting the first image of the first resolution with the first mode identifier to the display component.

5. The method according to claim 1 , wherein transmitting the second image of the first resolution to the display component at the third frequency comprises:

generating the second image of the first resolution with a second mode identifier; and

transmitting the second image of the first resolution with the second mode identifier to the display component.

6. The method according to claim 1 , wherein the method is applicable to the processing component in a virtual reality device, and acquiring the mode information comprises:

acquiring posture information of a user's head;

determining a rotation speed of the head based on the posture information;

determining that the mode information indicates the first mode in response to the rotation speed being greater than a threshold; and

determining that the mode information indicates the second mode in response to the rotation speed being less than or equal to the threshold.

7. An image display method, applicable to a display component, the method comprising:

receiving an image of a first resolution;

acquiring a mode identifier, wherein the mode identifier is configured to indicate that the image is in a first mode or a second mode;

in the case that the image is in the first mode, splitting the image as a first image into a plurality of sub-images of a second resolution, and displaying the plurality of sub-images of the second resolution at a second frequency;

in the cast that the image is in the second mode, receiving n−1 images of the first resolution, and n≥2, and

splicing the received n images of the first resolution into a frame of an image for display.

8. The method according to claim 7 , wherein acquiring the mode identifier comprises:

acquiring the mode identifier in the image.

9. The method according to claim 7 , wherein in the case that the image is in the first mode, splitting the image as the first image into the plurality of sub-images of the second resolution, and displaying the plurality of sub-images of the second resolution at the second frequency comprises:

cropping the image of the first resolution into the plurality of sub-images of the second resolution in the case that the image is in the first mode; and

scaling up the sub-images of the second resolution into an image of a third resolution and displaying the image of the third resolution at the second frequency.

10. The method according to claim 7 , wherein the image of the first resolution is regarded as an second image, and splicing the received n images of the first resolution into the frame of the image for display comprises:

displaying a third image of a third resolution at a fourth frequency, wherein the third image is composed of the n second images, the fourth frequency being lower than the second frequency, and the third resolution being greater than the first resolution.

11. An image display device, comprising a processor and a memory storing at least one instruction, at least one program, a code set or an instruction set therein, wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is caused to perform the image display method as defined in claim 7 .

12. A non-transitory computer storage medium storing at least one program, a code set, or an instruction set therein, wherein the at least one instruction, the at least one program, the code set or the instruction set, when loaded and executed by a processor, causes the processor to perform the image display method as defined in claim 1 .

13. A non-transitory computer storage medium storing at least one program, a code set, or an instruction set therein, wherein the at least one instruction, the at least one program, the code set or the instruction set, when loaded and executed by a processor, causes the processor to perform the image display method as defined in claim 7 .

14. An image display device, comprising a processor and a memory storing at least one instruction, at least one program, a code set or an instruction set therein, wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is caused to perform:

acquiring mode information;

transmitting a first image of a first resolution to a display component at a first frequency in the case that the mode information indicates a first mode, wherein the first image is formed by splicing a plurality of sub-images of a second resolution; and

transmitting a second image of the first resolution to the display component at a third frequency in the case that the mode information indicates a second mode, wherein n second images form a frame of image of the display component, and n≥2.

15. The device according to claim 14 , wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is further caused to perform:

acquiring the plurality of sub-images of the second resolution in the case that the mode information indicates the first mode; and

splicing the plurality of sub-images into the first image of the first resolution.

16. The device according to claim 14 , wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is further caused to perform:

acquiring a third image of a third resolution in the case that the mode information indicates the second mode;

cropping the third image into the n second images of the first resolution; and

transmitting the second image of the first resolution to the display component at the third frequency.

17. The device according to claim 14 , wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is further caused to perform:

generating the first image of the first resolution with a first mode identifier; and

transmitting the first image of the first resolution with the first mode identifier to the display component.

18. The device according to claim 14 , wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is further caused to perform:

generating the second image of the first resolution with a second mode identifier; and

transmitting the second image of the first resolution with the second mode identifier to the display component.

19. The device according to claim 14 , wherein the processor, when loading and executing the at least one instruction, the at least one program, the code set or the instruction set, is further caused to perform:

acquiring posture information of a user's head;

determining a rotation speed of the head based on the posture information;

determining that the mode information indicates the first mode in response to the rotation speed being greater than a threshold; and

determining that the mode information indicates the second mode in response to the rotation speed being less than or equal to the threshold.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2021
From: LI, WENYU; MIAO, JINGHUA; ZHANG, HAO; CHEN, LILI
To: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.; BOE TECHNOLOGY GROUP CO., LTD.
Reel/Frame 058053/0519 →
Continuity (1)
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